EP2944201A1 - Composition for low fat ice cream, containing tagatose, low-fat ice cream using same, and preparation method therefor - Google Patents

Composition for low fat ice cream, containing tagatose, low-fat ice cream using same, and preparation method therefor Download PDF

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Publication number
EP2944201A1
EP2944201A1 EP14738164.4A EP14738164A EP2944201A1 EP 2944201 A1 EP2944201 A1 EP 2944201A1 EP 14738164 A EP14738164 A EP 14738164A EP 2944201 A1 EP2944201 A1 EP 2944201A1
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EP
European Patent Office
Prior art keywords
weight
ice cream
parts
low
composition
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
EP14738164.4A
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German (de)
French (fr)
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EP2944201A4 (en
Inventor
Beom Suk Kim
Ji Hoon Koh
Seung Won Park
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CJ CheilJedang Corp
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CJ CheilJedang Corp
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Publication of EP2944201A1 publication Critical patent/EP2944201A1/en
Publication of EP2944201A4 publication Critical patent/EP2944201A4/en
Ceased legal-status Critical Current

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    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23GCOCOA; COCOA PRODUCTS, e.g. CHOCOLATE; SUBSTITUTES FOR COCOA OR COCOA PRODUCTS; CONFECTIONERY; CHEWING GUM; ICE-CREAM; PREPARATION THEREOF
    • A23G9/00Frozen sweets, e.g. ice confectionery, ice-cream; Mixtures therefor
    • A23G9/32Frozen sweets, e.g. ice confectionery, ice-cream; Mixtures therefor characterised by the composition containing organic or inorganic compounds
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23GCOCOA; COCOA PRODUCTS, e.g. CHOCOLATE; SUBSTITUTES FOR COCOA OR COCOA PRODUCTS; CONFECTIONERY; CHEWING GUM; ICE-CREAM; PREPARATION THEREOF
    • A23G9/00Frozen sweets, e.g. ice confectionery, ice-cream; Mixtures therefor
    • A23G9/32Frozen sweets, e.g. ice confectionery, ice-cream; Mixtures therefor characterised by the composition containing organic or inorganic compounds
    • A23G9/34Frozen sweets, e.g. ice confectionery, ice-cream; Mixtures therefor characterised by the composition containing organic or inorganic compounds characterised by carbohydrates used, e.g. polysaccharides
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23VINDEXING SCHEME RELATING TO FOODS, FOODSTUFFS OR NON-ALCOHOLIC BEVERAGES AND LACTIC OR PROPIONIC ACID BACTERIA USED IN FOODSTUFFS OR FOOD PREPARATION
    • A23V2002/00Food compositions, function of food ingredients or processes for food or foodstuffs
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23VINDEXING SCHEME RELATING TO FOODS, FOODSTUFFS OR NON-ALCOHOLIC BEVERAGES AND LACTIC OR PROPIONIC ACID BACTERIA USED IN FOODSTUFFS OR FOOD PREPARATION
    • A23V2250/00Food ingredients
    • A23V2250/18Lipids
    • A23V2250/184Emulsifier

Definitions

  • the present invention relates to a composition for low-fat ice cream containing D-tagatose and low-fat ice cream prepared using the same.
  • the present invention relates to a method for preparing low-fat ice cream using D-tagatose.
  • Ice cream is a food prepared by mixing milk or other dairy products with sweeteners, flavor components and the like, followed by freezing, and is a dessert widely loved all around the world.
  • a high fat content or high-calorie ingredient such as milk, sugar and the like
  • ice cream may cause juvenile obesity, juvenile diabetes, and the like. Further, there is a problem in that ice cream may cause adult diseases including hyperlipidemia, obesity, diabetes, and the like.
  • these documents disclose methods for preparing ice cream by increasing the content of rice, chestnuts, fruits or other materials instead of decreasing the content of dairy products, such as milk and the like.
  • fat content and calories of ice cream can be reduced by these method
  • ice cream produced by these methods are closer to a sherbet or the like rather ice cream which exhibits softness of frozen dairy products, and thus cannot be referred to as ice cream having low fat and low calories.
  • the present invention is aimed at providing low-fat ice cream which contains low fat content and exhibits excellent softness.
  • the present invention is aimed at providing a D-tagatose containing low-fat ice cream, which has low fat content and low calories and exhibits excellent softness, using a composition for low-fat ice cream containing 0.1 part by weight to 10 parts by weight D-tagatose based on the total composition, and a method for preparing low-fat ice cream using the composition.
  • the present invention provides a composition for low-fat ice cream containing D-tagatose in order to reduce the fat content and calories of ice cream while improving the softness thereof.
  • the present invention provides a method for preparing low-fat ice cream using the composition for low-fat ice cream containing D-tagatose, and low-fat ice cream containing D-tagatose.
  • the present invention provides a method for preparing low-fat ice cream using D-tagatose and a composition for low-fat ice cream containing D-tagatose, and thus reduces fat content and calories of ice cream while improving the softness thereof.
  • the present invention uses D-tagatose capable of lowering freezing point in the preparation of ice cream, and thus provides low-fat ice cream having improved softness unique to ice cream while containing a small amount of dairy products or milk fat.
  • the composition for low-fat ice cream may include 35 parts by weight to 75 parts by weight of milk, 1 part by weight to 25 parts by weight of sugar, 0.1 part by weight to 10 parts by weight of D-tagatose, and 0.01 part by weight to 5 parts by weight of an emulsifier.
  • D-tagatose a naturally produced low-calorie sugar, is an isomer of fructose. Although D-tagatose exhibits sweetness similar to that of sugar, that is, about 92% the sweetness of sugar, D-tagatose only has about 38% the calories of sugar and about 4% the glycemic index (GI) of sugar, and thus has been spotlighted as a sweetener replacement for sugar.
  • GI glycemic index
  • D-tagatose is known as Generally Recognized As Safe (GRAS) by the Food and Drug Administration (FDA) and thus is a material approved to be used in food, beverages, health food, diet additives and the like as a sweetener. Further, since D-tagatose is known to have no side effects when absorbed in human bodies, it is expected that D-tagatose will be widely utilized in the art.
  • GRAS Generally Recognized As Safe
  • FDA Food and Drug Administration
  • D-tagatose has a considerably lower freezing point than other sweeteners, such as sugar and the like, and thus serves to reduce the freezing point of a composition containing D-tagatose.
  • low-fat ice cream which has improved softness while reducing fat content and calories using D-tagatose, thereby exhibiting excellent taste, as described below.
  • the milk may be any milk typically used in the art without limitation.
  • the sugar may be any sugar typically used in the art without limitation.
  • the sugar is white sugar.
  • the emulsifier may be any emulsifier typically used in the art without limitation.
  • the emulsifier may include glycerol ester, propylene glycol ester, sucrose ester, sorbitan ester, monoglyceride, diglyceride, triglyceride, glycerin fatty acid ester, sucrose fatty acid ester, sorbitan fatty acid ester, propylene glycol fatty acid ester, polyoxyethylene sorbitan fatty acid ester, and lecithin, without being limited thereto. These may be used alone or in combination thereof.
  • the milk is present in an amount of 35 parts by weight to 75 parts by weight, preferably 40 parts by weight to 60 parts by weight, based on 100 parts by weight of the composition for ice cream.
  • the sugar is present in an amount of 1 part by weight to 25 parts by weight, preferably 1 part by weight to 20 parts by weight, more preferably 5 parts by weight to 15 parts by weight.
  • D-tagatose is present in an amount of 0.1 part by weight to 10 parts by weight, preferably 0.1 part by weight to 5 parts by weight, more preferably 0.5 part by weight to 3 parts by weight. Within this range, since D-tagatose can sufficiently reduce the freezing point of the composition, low-fat ice cream exhibiting sufficient softness despite low fat content thereof can be prepared.
  • the emulsifier is present in an amount of 0.01 part by weight to 5 parts by weight, preferably 0.01 part by weight to 3 parts by weight, more preferably 0.05 part by weight to 1 part by weight.
  • the composition may further include milk fat, which may be added during the operation of dissolving and sterilizing the components.
  • the milk fat may be any milk fat typically used in the art without limitation.
  • the milk fat is present in an amount of 10 parts by weight to 30 parts by weight, preferably 15 parts by weight to 25 parts by weight, more preferably 15 parts by weight to 20 parts by weight, based on 100 parts by weight of the composition for low-fat ice cream.
  • low-fat ice cream exhibiting low calories and softness can be prepared through reduction in the content of the milk fat.
  • the composition may further include powdered skim milk, which may be added during the operation of dissolving and sterilizing the components.
  • the powdered skim milk may be any powdered skim milk typically used in the art without limitation.
  • the powdered skim milk is milk solids-not-fat, and complements solids required to be used in a sufficient amount to prevent deterioration in flavor and taste of the ice cream according to the invention, which contains a reduced amount of milk fat while containing D-tagatose, and thus improves the taste of the low-fat ice cream.
  • the powdered skim milk is present in an amount of 1 part by weight to 15 parts by weight, preferably 1 part by weight to 10 parts by weight, more preferably 3 parts by weight to 8 parts by weight, based on 100 parts by weight of the composition for low-fat ice cream.
  • the powdered skim milk can prevent the deterioration in taste of the ice cream due to a reduction in milk fat content, whereby the low-fat ice cream can exhibit sufficiently excellent softness.
  • the composition may further include starch syrup, which can be added during the operation of dissolving and sterilizing the components.
  • the starch syrup may be any starch syrup typically used in the art without limitation.
  • the starch syrup provides a function similar to powdered skim milk. Specifically, the starch syrup is used together with D-tagatose and/or powdered skim milk in the low-fat ice cream, which can be deteriorated in flavor and taste due to a reduction in milk fat, and thus serves to improve the softness and flavor of the low-fat ice cream.
  • the starch syrup is present in an amount of 1 part by weight to 20 parts by weight, preferably 1 part by weight to 15 parts by weight, more preferably 5 parts by weight to 15 parts by weight, based on 100 parts by weight of the composition for low-fat ice cream.
  • the starch syrup can prevent deterioration in taste of the ice cream due to reduction in milk fat content, whereby the low-fat ice cream can exhibit sufficiently excellent softness.
  • low-fat ice cream prepared from the composition for low-fat ice cream in accordance with the present invention.
  • the low-fat ice cream includes 13% by weight (wt%) or less, preferably 10 wt% or less of milk fat, based on the total weight thereof.
  • a certain value or less does not include any negative value less than 0, and includes any positive value exceeding 0 and extremely close to 0.
  • the low-fat ice cream has a considerably lower freezing point than ice cream which is free from D-tagatose and is prepared using sugar.
  • the low-fat ice cream has a melting rate of 100% to 80%, preferably 100% to 90% the melting rate of high-milk fat ice cream free from D-tagatose.
  • high-quality ice cream should have a melting resistance low enough to almost melt after at least 10 minutes to 15 minutes.
  • the high-quality ice cream should melt well from the middle thereof and then softly and constantly melt to be in a uniform liquid state.
  • the following experiment may be performed: ice creams each placed in an amount of 100 ml in the same container are stored in a freezer at -10°C for 1 hour, followed by simultaneously taking the ice cream out, and then left at 20°C.
  • the melting rate of each ice cream is recorded by measuring the elapsed time until the occurrence of a first drop from each ice cream.
  • ice cream may not melt or may have a delay in melting, and may have layers when the ice cream is not uniform. Large air bubbles may be generated when the ice cream melts due to excessive overrun, and lumps may be generated due to the destabilization of proteins. Destabilization of proteins may be caused by inappropriate acidity, formation of salts, wrong selection of stabilizers, or the like. When the balance of salts and the composition ratio are wrong, whey separation may occur. Finally, when exhibiting low melting resistance, ice cream may melt into a water-like state.
  • the ice cream although ice cream was expected to exhibit low melting resistance due to reduced milk fat, the ice cream maintained a melting rate similar to that of high-quality ice cream due to the change in the amounts of powdered skim milk and starch syrup. In addition, the ice cream maintains softness by containing D-tagatose.
  • ice cream which had a melting rate maximally similar to that of a comparative product (conventional product), was rated as high-quality ice cream in terms of maintaining a conventional quality level, based on experimental results.
  • the method includes: dissolving and sterilizing 35 parts by weight to 75 parts by weight of milk, 1 part by weight to 25 parts by weight of sugar, 0.1 part by weight to 10 parts by weight of D-tagatose, and 0.01 part by weight to 5 parts by weight of an emulsifier; homogenizing the dissolved and sterilized composition; and cooling and freezing the homogenized composition.
  • composition for ice cream containing D-tagatose according to the invention are the same as those of the composition used in the method according to the present invention, descriptions of the composition can be replaced by the above description and thus will be omitted hereinafter.
  • dissolving and sterilizing the components may be performed by any method typically used in the art without limitation.
  • dissolving and sterilizing may be performed in the following manner, but is not limited thereto.
  • Dissolving and sterilizing the components may be performed by introducing appropriately weighed amounts (preferably, within the aforementioned ranges of amounts) of milk, milk fat, an emulsifier, sugar, D-tagatose, powdered skim milk and starch syrup into a sterilizer at about 70°C, followed by dissolving and sterilizing the components for about 40 minutes.
  • homogenizing the dissolved and sterilized composition may be performed by any method typically used in the art without limitation.
  • homogenizing the dissolved and sterilized composition may be performed in the following manner, but is not limited thereto.
  • homogenizing the dissolved and sterilized composition may be performed by mixing the composition for ice cream, which is dissolved and sterilized through dissolving and sterilizing the components, for about 20 minutes using a high-speed mixer.
  • cooling and freezing the homogenized composition may specifically include cooling, aging the composition for ice cream, shaping ice cream, and freezing.
  • Each operation may be performed by any method typically used in the art without limitation.
  • the processes from cooling until freezing may be performed in the following manner.
  • the composition for ice cream which is obtained through homogenizing of the dissolved and sterilized composition, is cooled to about 10°C or less, followed by setting an overrun to about 25%, thereby preparing ice cream.
  • a container is filled with an appropriate amount of the ice cream.
  • the ice cream is rapidly frozen at -25°C or less for about 2 hours using a rapid freezer.
  • cooling and freezing may be performed.
  • the prepared ice cream may be generally stored in a freezer at about -10°C or less for distribution thereof.
  • the homogenized composition was cooled to 10°C, followed by setting an overrun to 25%, thereby preparing ice cream. Then, the ice cream was supplied in an amount of 100 ml to an ice cream container. Next, the ice cream was rapidly frozen at - 25°C for 2 hours using a rapid freezer, thereby preparing a D-tagatose-containing low-fat ice cream.
  • Ice cream was prepared in the same manner as in Example 1 except that 16 parts by weight of sugar, 27.2 parts by weight of milk fat, 3.6 parts by weight of powdered skim milk, 50.2 parts by weight of milk, 2.5 parts by weight of starch syrup, and 0.5 part by weight of emulsifier were used in dissolution and sterilization.
  • Ice cream was prepared in the same manner as in Example 1 except that 1 part by weight of glucose was used instead of 1 part by weight of D-tagatose in dissolution and sterilization.
  • Table 1 shows the components and amounts thereof in ice creams prepared in Example 1 and Comparative Examples 1 and 2.
  • Table 1 Amount of component (wt%) Example 1 Comparative Example 1 Comparative Example 2 D-tagatose 1 - - Glucose - - 1 Sugar 11 16 11 Milk fat 18 27.2 18 Powdered skim milk 6.5 3.6 6.5 Milk 52.5 50.2 52.5 Starch syrup 10.5 2.5 10.5 Emulsifier 0.5 0.5 0.5 Total 100 100 100
  • Example 1 To evaluate the melting rate of each of the ice creams prepared in Example 1 and Comparative Examples 1 and 2, the following experiment was performed. Ice creams each placed in an amount of 100 ml in the same container were stored in a freezer at -10°C for 1 hour, followed by simultaneously taking the ice cream out, and then left at 20°C. The melting rate of each ice cream was recorded by measuring the time elapsed until the occurrence of a first drop from each ice cream.
  • the measurement method is as described above, and the ice cream of Example 1 can be evaluated as excellent-quality ice cream when the ice cream has a melting rate of at least 90% or more the melting rate of the ice cream of Comparative Example 1.
  • Example 1 Each of the ice creams prepared in Example 1 and Comparative Examples 1 and 2 was subjected to a component analysis and evaluated as to calories.
  • Example 1 A sensory evaluation of each of the ice creams prepared in Example 1 and Comparative Examples 1 and 2 was performed to evaluate the taste and preference thereof.

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  • Chemical & Material Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Inorganic Chemistry (AREA)
  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Polymers & Plastics (AREA)
  • Health & Medical Sciences (AREA)
  • Molecular Biology (AREA)
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Abstract

Disclosed herein is a method for preparing low-fat ice cream which has low fat content and low calories while exhibiting excellent taste. The composition includes 0.1 part by weight to 10 parts by weight of D-tagatose based on the total composition. A method for preparing low-fat ice cream using the composition, and a D-tagatose containing low-fat ice cream prepared by the method are also disclosed. The low-fat ice cream has low fat content and low calories, and exhibits excellent softness

Description

    Technical Field
  • The present invention relates to a composition for low-fat ice cream containing D-tagatose and low-fat ice cream prepared using the same. In addition, the present invention relates to a method for preparing low-fat ice cream using D-tagatose.
  • Background Art
  • Ice cream is a food prepared by mixing milk or other dairy products with sweeteners, flavor components and the like, followed by freezing, and is a dessert widely loved all around the world.
  • Since a high fat content or high-calorie ingredient, such as milk, sugar and the like, is used as a main material in the preparation of ice cream, even small servings of ice cream contain considerable calories and fat. In addition, since young consumers may ingest excess ice cream due to appetizing soft and sweet tastes, ice cream may cause juvenile obesity, juvenile diabetes, and the like. Further, there is a problem in that ice cream may cause adult diseases including hyperlipidemia, obesity, diabetes, and the like.
  • To resolve such problems, various attempts have been made to develop low-fat ice cream, and some examples of low-fat ice cream are disclosed in Korean Patent No. 10-0926638 , Korean Patent Publication No. 10-2011-0018989 , and the like.
  • To reduce fat content and calories of ice cream, these documents disclose methods for preparing ice cream by increasing the content of rice, chestnuts, fruits or other materials instead of decreasing the content of dairy products, such as milk and the like. However, although fat content and calories of ice cream can be reduced by these method, ice cream produced by these methods are closer to a sherbet or the like rather ice cream which exhibits softness of frozen dairy products, and thus cannot be referred to as ice cream having low fat and low calories.
  • Thus, there is a need for ice cream which has low fat content and low calories while maintaining softness of original ice cream.
  • Technical Problem
  • The present invention is aimed at providing low-fat ice cream which contains low fat content and exhibits excellent softness.
  • Specifically, the present invention is aimed at providing a D-tagatose containing low-fat ice cream, which has low fat content and low calories and exhibits excellent softness, using a composition for low-fat ice cream containing 0.1 part by weight to 10 parts by weight D-tagatose based on the total composition, and a method for preparing low-fat ice cream using the composition.
  • Technical Solution
  • The present invention provides a composition for low-fat ice cream containing D-tagatose in order to reduce the fat content and calories of ice cream while improving the softness thereof. In addition, the present invention provides a method for preparing low-fat ice cream using the composition for low-fat ice cream containing D-tagatose, and low-fat ice cream containing D-tagatose.
  • It is one aspect of the present invention to provide a method for preparing low-fat ice cream containing D-tagatose, which includes: dissolving and sterilizing 35 parts by weight to 75 parts by weight of milk, 1 part by weight to 25 parts by weight of sugar, 0.1 part by weight to 10 parts by weight of D-tagatose, and 0.01 part by weight to 5 parts by weight of an emulsifier; homogenizing the dissolved and sterilized composition; and cooling and freezing the homogenized composition.
  • It is another aspect of the present invention to provide low-fat ice cream containing D-tagatose prepared by the method.
  • It is a further aspect of the present invention to provide a composition for low-fat ice cream containing D-tagatose including 35 parts by weight to 75 parts by weight of milk, 1 part by weight to 25 parts by weight of sugar, 0.1 part by weight to 10 parts by weight of D-tagatose, and 0.01 part by weight to 5 parts by weight of an emulsifier.
  • It is yet another aspect of the present invention to provide low-fat ice cream containing D-tagatose prepared using the composition.
  • Advantageous Effects
  • The present invention provides a method for preparing low-fat ice cream using D-tagatose and a composition for low-fat ice cream containing D-tagatose, and thus reduces fat content and calories of ice cream while improving the softness thereof.
  • Specifically, the present invention uses D-tagatose capable of lowering freezing point in the preparation of ice cream, and thus provides low-fat ice cream having improved softness unique to ice cream while containing a small amount of dairy products or milk fat.
  • Description of Drawings
    • Fig. 1 is a graph depicting measurement results of melting rate of ice cream according to Experimental Example 1.
    • Fig. 2 is a graph depicting the results of sensory evaluation of ice cream according to Experimental Example 3.
    Best Mode
  • Hereinafter, embodiments of the present invention will be described in detail with reference to the accompanying drawings. Description of details apparent to those skilled in the art will be omitted for clarity.
  • In accordance with one aspect of the present invention, there is provided a composition for low-fat ice cream containing D-tagatose to reduce fat content and calories of ice cream while improving the softness thereof. Specifically, the composition for low-fat ice cream may include 35 parts by weight to 75 parts by weight of milk, 1 part by weight to 25 parts by weight of sugar, 0.1 part by weight to 10 parts by weight of D-tagatose, and 0.01 part by weight to 5 parts by weight of an emulsifier.
  • D-tagatose, a naturally produced low-calorie sugar, is an isomer of fructose. Although D-tagatose exhibits sweetness similar to that of sugar, that is, about 92% the sweetness of sugar, D-tagatose only has about 38% the calories of sugar and about 4% the glycemic index (GI) of sugar, and thus has been spotlighted as a sweetener replacement for sugar.
  • In addition, D-tagatose is known as Generally Recognized As Safe (GRAS) by the Food and Drug Administration (FDA) and thus is a material approved to be used in food, beverages, health food, diet additives and the like as a sweetener. Further, since D-tagatose is known to have no side effects when absorbed in human bodies, it is expected that D-tagatose will be widely utilized in the art.
  • Further, D-tagatose has a considerably lower freezing point than other sweeteners, such as sugar and the like, and thus serves to reduce the freezing point of a composition containing D-tagatose.
  • In accordance with another aspect of the present invention, there is provided low-fat ice cream which has improved softness while reducing fat content and calories using D-tagatose, thereby exhibiting excellent taste, as described below.
  • According to the invention, the milk may be any milk typically used in the art without limitation.
  • According to the invention, the sugar may be any sugar typically used in the art without limitation. Preferably, the sugar is white sugar.
  • According to the invention, the emulsifier may be any emulsifier typically used in the art without limitation. Examples of the emulsifier may include glycerol ester, propylene glycol ester, sucrose ester, sorbitan ester, monoglyceride, diglyceride, triglyceride, glycerin fatty acid ester, sucrose fatty acid ester, sorbitan fatty acid ester, propylene glycol fatty acid ester, polyoxyethylene sorbitan fatty acid ester, and lecithin, without being limited thereto. These may be used alone or in combination thereof.
  • In one embodiment of the invention, the milk is present in an amount of 35 parts by weight to 75 parts by weight, preferably 40 parts by weight to 60 parts by weight, based on 100 parts by weight of the composition for ice cream.
  • The sugar is present in an amount of 1 part by weight to 25 parts by weight, preferably 1 part by weight to 20 parts by weight, more preferably 5 parts by weight to 15 parts by weight.
  • D-tagatose is present in an amount of 0.1 part by weight to 10 parts by weight, preferably 0.1 part by weight to 5 parts by weight, more preferably 0.5 part by weight to 3 parts by weight. Within this range, since D-tagatose can sufficiently reduce the freezing point of the composition, low-fat ice cream exhibiting sufficient softness despite low fat content thereof can be prepared.
  • The emulsifier is present in an amount of 0.01 part by weight to 5 parts by weight, preferably 0.01 part by weight to 3 parts by weight, more preferably 0.05 part by weight to 1 part by weight.
  • In another embodiment of the invention, the composition may further include milk fat, which may be added during the operation of dissolving and sterilizing the components.
  • The milk fat may be any milk fat typically used in the art without limitation. The milk fat is present in an amount of 10 parts by weight to 30 parts by weight, preferably 15 parts by weight to 25 parts by weight, more preferably 15 parts by weight to 20 parts by weight, based on 100 parts by weight of the composition for low-fat ice cream.
  • Within this range of the milk fat, low-fat ice cream exhibiting low calories and softness can be prepared through reduction in the content of the milk fat.
  • In a further embodiment of the invention, the composition may further include powdered skim milk, which may be added during the operation of dissolving and sterilizing the components.
  • The powdered skim milk may be any powdered skim milk typically used in the art without limitation. The powdered skim milk is milk solids-not-fat, and complements solids required to be used in a sufficient amount to prevent deterioration in flavor and taste of the ice cream according to the invention, which contains a reduced amount of milk fat while containing D-tagatose, and thus improves the taste of the low-fat ice cream.
  • The powdered skim milk is present in an amount of 1 part by weight to 15 parts by weight, preferably 1 part by weight to 10 parts by weight, more preferably 3 parts by weight to 8 parts by weight, based on 100 parts by weight of the composition for low-fat ice cream. Within this range, the powdered skim milk can prevent the deterioration in taste of the ice cream due to a reduction in milk fat content, whereby the low-fat ice cream can exhibit sufficiently excellent softness.
  • In yet another embodiment of the invention, the composition may further include starch syrup, which can be added during the operation of dissolving and sterilizing the components.
  • The starch syrup may be any starch syrup typically used in the art without limitation. The starch syrup provides a function similar to powdered skim milk. Specifically, the starch syrup is used together with D-tagatose and/or powdered skim milk in the low-fat ice cream, which can be deteriorated in flavor and taste due to a reduction in milk fat, and thus serves to improve the softness and flavor of the low-fat ice cream.
  • The starch syrup is present in an amount of 1 part by weight to 20 parts by weight, preferably 1 part by weight to 15 parts by weight, more preferably 5 parts by weight to 15 parts by weight, based on 100 parts by weight of the composition for low-fat ice cream. Within this range, the starch syrup can prevent deterioration in taste of the ice cream due to reduction in milk fat content, whereby the low-fat ice cream can exhibit sufficiently excellent softness.
  • In accordance with another aspect of the present invention, there is provided low-fat ice cream prepared from the composition for low-fat ice cream in accordance with the present invention.
  • According to the invention, the low-fat ice cream includes 13% by weight (wt%) or less, preferably 10 wt% or less of milk fat, based on the total weight thereof.
  • As used herein, the term "a certain value or less" does not include any negative value less than 0, and includes any positive value exceeding 0 and extremely close to 0.
  • The low-fat ice cream has a considerably lower freezing point than ice cream which is free from D-tagatose and is prepared using sugar.
  • In accordance with a further aspect of the present invention, the low-fat ice cream has a melting rate of 100% to 80%, preferably 100% to 90% the melting rate of high-milk fat ice cream free from D-tagatose.
  • As for the melting rate (melting properties), high-quality ice cream should have a melting resistance low enough to almost melt after at least 10 minutes to 15 minutes. In addition, the high-quality ice cream should melt well from the middle thereof and then softly and constantly melt to be in a uniform liquid state. To evaluate such melting properties, the following experiment may be performed: ice creams each placed in an amount of 100 ml in the same container are stored in a freezer at -10°C for 1 hour, followed by simultaneously taking the ice cream out, and then left at 20°C. The melting rate of each ice cream is recorded by measuring the elapsed time until the occurrence of a first drop from each ice cream.
  • Generally, phenomena and causes observed when ice cream melts are as follows: ice cream may not melt or may have a delay in melting, and may have layers when the ice cream is not uniform. Large air bubbles may be generated when the ice cream melts due to excessive overrun, and lumps may be generated due to the destabilization of proteins. Destabilization of proteins may be caused by inappropriate acidity, formation of salts, wrong selection of stabilizers, or the like. When the balance of salts and the composition ratio are wrong, whey separation may occur. Finally, when exhibiting low melting resistance, ice cream may melt into a water-like state.
  • According to the invention, although ice cream was expected to exhibit low melting resistance due to reduced milk fat, the ice cream maintained a melting rate similar to that of high-quality ice cream due to the change in the amounts of powdered skim milk and starch syrup. In addition, the ice cream maintains softness by containing D-tagatose.
  • In quality evaluation of the ice cream according to various examples, ice cream, which had a melting rate maximally similar to that of a comparative product (conventional product), was rated as high-quality ice cream in terms of maintaining a conventional quality level, based on experimental results.
  • In accordance with yet another aspect of the present invention, there is provided a method for preparing low-fat ice cream using the composition low fat ice cream containing D-tagatose.
  • Specifically, the method includes: dissolving and sterilizing 35 parts by weight to 75 parts by weight of milk, 1 part by weight to 25 parts by weight of sugar, 0.1 part by weight to 10 parts by weight of D-tagatose, and 0.01 part by weight to 5 parts by weight of an emulsifier; homogenizing the dissolved and sterilized composition; and cooling and freezing the homogenized composition.
  • Since details of the composition for ice cream containing D-tagatose according to the invention are the same as those of the composition used in the method according to the present invention, descriptions of the composition can be replaced by the above description and thus will be omitted hereinafter.
  • According to the invention, dissolving and sterilizing the components may be performed by any method typically used in the art without limitation. For example, dissolving and sterilizing may be performed in the following manner, but is not limited thereto. Dissolving and sterilizing the components may be performed by introducing appropriately weighed amounts (preferably, within the aforementioned ranges of amounts) of milk, milk fat, an emulsifier, sugar, D-tagatose, powdered skim milk and starch syrup into a sterilizer at about 70°C, followed by dissolving and sterilizing the components for about 40 minutes.
  • According to the invention, homogenizing the dissolved and sterilized composition may be performed by any method typically used in the art without limitation. For example, homogenizing the dissolved and sterilized composition may be performed in the following manner, but is not limited thereto. To allow fat in the composition to uniformly and stably disperse, homogenizing the dissolved and sterilized composition may be performed by mixing the composition for ice cream, which is dissolved and sterilized through dissolving and sterilizing the components, for about 20 minutes using a high-speed mixer.
  • According to the invention, cooling and freezing the homogenized composition may specifically include cooling, aging the composition for ice cream, shaping ice cream, and freezing. Each operation may be performed by any method typically used in the art without limitation. For example, the processes from cooling until freezing may be performed in the following manner. The composition for ice cream, which is obtained through homogenizing of the dissolved and sterilized composition, is cooled to about 10°C or less, followed by setting an overrun to about 25%, thereby preparing ice cream. Next, a container is filled with an appropriate amount of the ice cream. Next, the ice cream is rapidly frozen at -25°C or less for about 2 hours using a rapid freezer. Through these processes, cooling and freezing may be performed. The prepared ice cream may be generally stored in a freezer at about -10°C or less for distribution thereof.
  • Hereinafter, the present invention will be explained in more detail with reference to some examples. It should be understood that these examples are provided for illustration only and are not to be in any way construed as limiting the present invention.
  • Example 1 Preparation of D-tagatose-containing low-fat ice cream
  • 1 part by weight of D-tagatose, 11 parts by weight of sugar, 18 parts by weight of milk fat, 6.5 parts by weight of powdered skim milk, 52.5 parts by weight of milk, 10.5 parts by weight of starch syrup, and 0.5 part by weight of an emulsifier were dissolved and sterilized in a sterilizer of 70°C for 40 minutes. Next, the composition was homogenized by mixing the composition for 20 minutes using a high-speed mixer.
  • Next, the homogenized composition was cooled to 10°C, followed by setting an overrun to 25%, thereby preparing ice cream. Then, the ice cream was supplied in an amount of 100 ml to an ice cream container. Next, the ice cream was rapidly frozen at - 25°C for 2 hours using a rapid freezer, thereby preparing a D-tagatose-containing low-fat ice cream.
  • Comparative Example 1 Preparation of sugar-containing ice cream
  • Ice cream was prepared in the same manner as in Example 1 except that 16 parts by weight of sugar, 27.2 parts by weight of milk fat, 3.6 parts by weight of powdered skim milk, 50.2 parts by weight of milk, 2.5 parts by weight of starch syrup, and 0.5 part by weight of emulsifier were used in dissolution and sterilization.
  • Comparative Example 2 Preparation of ice cream containing glucose
  • Ice cream was prepared in the same manner as in Example 1 except that 1 part by weight of glucose was used instead of 1 part by weight of D-tagatose in dissolution and sterilization.
  • Table 1 shows the components and amounts thereof in ice creams prepared in Example 1 and Comparative Examples 1 and 2. Table 1
    Amount of component (wt%) Example 1 Comparative Example 1 Comparative Example 2
    D-tagatose 1 - -
    Glucose - - 1
    Sugar 11 16 11
    Milk fat 18 27.2 18
    Powdered skim milk 6.5 3.6 6.5
    Milk 52.5 50.2 52.5
    Starch syrup 10.5 2.5 10.5
    Emulsifier 0.5 0.5 0.5
    Total 100 100 100
  • Experimental Example 1 Evaluation of melting rate of ice cream
  • To evaluate the melting rate of each of the ice creams prepared in Example 1 and Comparative Examples 1 and 2, the following experiment was performed. Ice creams each placed in an amount of 100 ml in the same container were stored in a freezer at -10°C for 1 hour, followed by simultaneously taking the ice cream out, and then left at 20°C. The melting rate of each ice cream was recorded by measuring the time elapsed until the occurrence of a first drop from each ice cream.
  • The measurement method is as described above, and the ice cream of Example 1 can be evaluated as excellent-quality ice cream when the ice cream has a melting rate of at least 90% or more the melting rate of the ice cream of Comparative Example 1.
  • The results are shown in Fig. 1.
  • Experimental Example 2 Component analysis of ice cream and Evaluation of calories thereof
  • Each of the ice creams prepared in Example 1 and Comparative Examples 1 and 2 was subjected to a component analysis and evaluated as to calories.
  • The results are shown in Table 2. Table 2
    Example 1 Comparative Example 1 Comparative Example 2
    Amount of component (wt%) Milk fat 9.5 13.5 9.5
    Milk solids-not-fat (MSNF) 11 7.9 11
    Milk solids 20.5 21.4 20.5
    Sugar 18.3 17.5 17.2
    Calories (kcal) Total calories 197 217 210
    Calories due to fat 90 117 90
  • Experimental Example 3 Sensory evaluation of ice cream
  • A sensory evaluation of each of the ice creams prepared in Example 1 and Comparative Examples 1 and 2 was performed to evaluate the taste and preference thereof.
  • The results of the sensory evaluation are shown in Fig. 2.
  • As shown in Fig. 2, when the ice cream of Comparative Example 1 was rated as 100, the D-tagatose containing ice cream of Example 1 scored 90% relative to the ice cream of Comparative Example 1, and the glucose-containing ice cream of Comparative Example 2 scored about 70% relative to the ice cream of Comparative Example 1 in terms of taste and quality.

Claims (10)

  1. A composition for ice cream containing D-tagatose comprising:
    35 parts by weight to 75 parts by weight of milk;
    1 part by weight to 25 parts by weight of sugar;
    0.1 part by weight to 10 parts by weight of D-tagatose; and
    0.01 part by weight to 5 parts by weight of an emulsifier.
  2. The composition according to claim 1, further comprising: 10 parts by weight to 30 parts by weight of milk fat.
  3. The composition according to claim 1, further comprising: 1 part by weight to 15 parts by weight of powdered skim milk.
  4. The composition according to claim 1, further comprising: 1 part by weight to 20 parts by weight of starch syrup.
  5. Ice cream containing D-tagatose prepared from the composition according to any one of claims 1 to 4.
  6. The ice cream containing D-tagatose according to claim 5, wherein milk fat is present in an amount of 13 wt% or less based on the total weight of the ice cream.
  7. A method for preparing ice cream containing D-tagatose, comprising:
    dissolving and sterilizing a composition, wherein the composition comprises: 35 parts by weight to 75 parts by weight of milk, 1 part by weight to 25 parts by weight of sugar, 0.1 part by weight to 10 parts by weight of D-tagatose, and 0.01 part by weight to 5 parts by weight of an emulsifier;
    homogenizing the dissolved and sterilized composition; and
    cooling and freezing the homogenized composition.
  8. The method according to claim 7, wherein the composition further comprises 10 parts by weight to 30 parts by weight of milk fat.
  9. The method according to claim 7, wherein the composition further comprises 1 part by weight to 15 parts by weight of powdered skim milk.
  10. The method according to claim 7, wherein the composition further comprises 1 part by weight to 20 parts by weight of starch syrup.
EP14738164.4A 2013-01-14 2014-01-14 ICE CREAM COMPOSITION WITH LOW FAT CONTENT CONTAINING TAGATOSIS, ICE CREAM WITH LOW FAT CONTENT USING THE SAME, AND PROCESS FOR PREPARING THE SAME Ceased EP2944201A4 (en)

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KR1020130003984A KR101632687B1 (en) 2013-01-14 2013-01-14 Composition for law-fat ice cream containing d-tagatose, law-fat ice cream using the composition, and menufacturing method thereof
PCT/KR2014/000383 WO2014109620A1 (en) 2013-01-14 2014-01-14 Composition for low fat ice cream, containing tagatose, low-fat ice cream using same, and preparation method therefor

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CN106306322A (en) * 2016-08-22 2017-01-11 徐州统食品工业有限公司 Chocolate soft ice cream milk slurry containing Lactobacillus delbrueckii subsp. lactis and preparation method thereof
CN106359592A (en) * 2016-08-22 2017-02-01 徐州统食品工业有限公司 Fermented yoghourt soft ice cream milk sauce containing various probiotics, and production method of milk slurry
KR102158477B1 (en) * 2018-12-21 2020-09-22 롯데제과 주식회사 A composition for low calorie icecream comprising lignocellulose

Family Cites Families (19)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3345785A (en) * 1964-12-07 1967-10-10 Warren N Riker Sanding disc assembly
CN1052616C (en) * 1995-12-20 2000-05-24 杜长征 Health care ice-cream
DE69908306T2 (en) * 1998-02-24 2003-11-27 Arla Foods Amba, Viby J USE OF T-TAGATOSE AS A PRERABIOTIC FOOD ADDITIVE
JP2002186427A (en) * 2000-12-19 2002-07-02 Sanei Gen Ffi Inc Frozen dessert
CN1099241C (en) * 2000-12-29 2003-01-22 深圳市海川实业股份有限公司 Low fat ice cream powder
JP4319361B2 (en) * 2001-06-25 2009-08-26 長谷川香料株式会社 Milk flavor enhancer or enhancer
CN102293314A (en) * 2001-08-17 2011-12-28 雀巢产品有限公司 Frozen dessert
AU2003236370A1 (en) * 2002-04-08 2003-10-20 Fuji Oil Company, Limited Frozen dessert mix and frozen dessert prepared therefrom
US20060286248A1 (en) * 2003-10-02 2006-12-21 Anfinsen Jon R Reduced-carbohydrate and nutritionally-enhanced frozen desserts and other food products
EP1817964A1 (en) * 2006-02-13 2007-08-15 Sweetwell NV Functional sugar replacement
US8293303B2 (en) * 2005-10-11 2012-10-23 Purecircle Sdn Bhd Process for manufacturing a sweetener and use thereof
KR100779160B1 (en) * 2005-12-29 2007-11-28 주식회사 삼양제넥스 Tagatose-containing low glycemic index mixed composition
ES2373967T3 (en) * 2006-07-06 2012-02-10 Nestec S.A. WATER EMULSION - IN - OIL FOR CONFITTERY PRODUCTS, WITH A WEAK CONTENT IN FAT.
DK2247196T3 (en) * 2008-02-06 2015-02-16 Senomyx Inc Sweetener FORMATIONS AND PROCESSES FOR PREPARING THEM
KR100926638B1 (en) 2008-08-25 2009-11-13 박상홍 Method for producing low fat ice cream and low fat ice cream prepared by the method
KR20110018989A (en) 2009-08-19 2011-02-25 박상홍 Method for producing low fat ice cream and low fat ice cream prepared by the method
US8414948B2 (en) * 2009-10-15 2013-04-09 Purecircle Sdn Bhd High-purity rebaudioside D and low-calorie ice cream containing the same
WO2011049125A1 (en) * 2009-10-21 2011-04-28 花王株式会社 Ice cream
CN102511642B (en) * 2011-12-29 2013-09-25 内蒙古伊利实业集团股份有限公司 Stereoscopic frozen drink and preparation method thereof

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US20150351425A1 (en) 2015-12-10
KR101632687B1 (en) 2016-06-22
JP2016505260A (en) 2016-02-25
JP6437030B2 (en) 2018-12-12
WO2014109620A1 (en) 2014-07-17
EP2944201A4 (en) 2016-08-17
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CN105007753A (en) 2015-10-28
HK1211433A1 (en) 2016-05-27

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